Li Han-Lin, Fang Shu-Cherng, Lin Bertrand M T, Kuo Way
Department of Management Science, City University of Hong Kong, Hong Kong, China.
Department of Industrial and Systems Engineering, North Carolina State University, Raleigh, NC, 27695, USA.
Light Sci Appl. 2023 Feb 1;12(1):32. doi: 10.1038/s41377-023-01073-x.
RGB and CYMK are two major coloring schemes currently available for light colors and pigment colors, respectively. Both systems use letter-based color codes that require a large range of values to represent different colors. The problem is that these two systems are hard to use for manipulating any operations involving combinations of colors, and they lack the capacity for inter-changeability or unification. Based on prime number theory and Goldbach's conjecture, this study presents a universal color system (C) using a number-based structure to encode, compute and unify all colors on a color wheel. The proposed C system offers a unified representation for the efficient encoding and effective manipulation of color. It can be applied to designing a high-rate LCD system and colorizing objects with multiple attributes and DNA codons, opening the door to manipulating colors and lights for even broader applications.
RGB和CYMK分别是目前用于浅色和颜料色的两种主要配色方案。这两种系统都使用基于字母的颜色代码,需要大量的值来表示不同的颜色。问题在于,这两种系统很难用于处理任何涉及颜色组合的操作,并且它们缺乏互换性或统一性。基于质数理论和哥德巴赫猜想,本研究提出了一种通用颜色系统(C),该系统使用基于数字的结构对色轮上的所有颜色进行编码、计算和统一。所提出的C系统为颜色的高效编码和有效处理提供了统一的表示方法。它可应用于设计高速液晶显示系统以及为具有多种属性和DNA密码子的物体上色,为更广泛地操控颜色和光线打开了大门。